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Plant Science and Agronomy

D-Index
35
Citations
6515
World Ranking
5036
National Ranking
96

Best Publications

  • Physiological Effects of the Synthetic Strigolactone Analog GR24 on Root System Architecture in Arabidopsis: Another Belowground Role for Strigolactones?

    Carolien Ruyter-Spira;Wouter Kohlen;Tatsiana Charnikhova;Arjan van Zeijl

  • Strigolactones Are Transported through the Xylem and Play a Key Role in Shoot Architectural Response to Phosphate Deficiency in Nonarbuscular Mycorrhizal Host Arabidopsis

    Wouter Kohlen;Tatsiana Charnikhova;Qing Liu;Ralph Bours

  • Tomato strigolactones are derived from carotenoids and their biosynthesis is promoted by phosphate starvation

    Juan Antonio López-Ráez;Tatsiana Charnikhova;Victoria Gómez-Roldán;Radoslava Matusova

  • Rice cytochrome P450 MAX1 homologs catalyze distinct steps in strigolactone biosynthesis

    Yanxia Zhang;Aalt D J van Dijk;Adrian Scaffidi;Gavin R Flematti

  • Strigolactone Biosynthesis in Medicago truncatula and Rice Requires the Symbiotic GRAS-Type Transcription Factors NSP1 and NSP2

    Wei Liu;Wei Liu;Wouter Kohlen;Alessandra Lillo;Rik Op den Camp

  • The tomato CAROTENOID CLEAVAGE DIOXYGENASE8 (SlCCD8) regulates rhizosphere signaling, plant architecture and affects reproductive development through strigolactone biosynthesis

    W. Kohlen;T. Charnikhova;M. Lammers;T. Pollina

  • SlCCD7 controls strigolactone biosynthesis, shoot branching and mycorrhiza-induced apocarotenoid formation in tomato.

    Jonathan T. Vogel;Michael H. Walter;Patrick Giavalisco;Anna Lytovchenko

  • Does abscisic acid affect strigolactone biosynthesis

    Juan A. López-Ráez;Juan A. López-Ráez;Wouter Kohlen;Tatsiana Charnikhova;Patrick Mulder

  • Osmotic stress represses strigolactone biosynthesis in Lotus japonicus roots: exploring the interaction between strigolactones and ABA under abiotic stress

    Junwei Liu;Hanzi He;Marco Vitali;Ivan Visentin

  • Arbuscular mycorrhizal symbiosis decreases strigolactone production in tomato

    Juan A. López-Ráez;Tatsiana Charnikhova;Ivan Fernández;Harro Bouwmeester

  • Natural variation of rice strigolactone biosynthesis is associated with the deletion of two MAX1 orthologs

    Catarina Cardoso;Yanxia Zhang;Muhammad Jamil;Jo Hepworth

  • Quantification of the relationship between strigolactones and Striga hermonthica infection in rice under varying levels of nitrogen and phosphorus

    M. Jamil;T. Charnikhova;C. Cardoso;T. Jamil

  • ABA-deficiency results in reduced plant and fruit size in tomato.

    L. Nitsch;W. Kohlen;C. Oplaat;T. Charnikhova

  • Rhizobium Lipo-chitooligosaccharide Signaling Triggers Accumulation of Cytokinins in Medicago truncatula Roots

    Arjan van Zeijl;Rik H.M. Op den Camp;Eva E. Deinum;Eva E. Deinum;Tatsiana Charnikhova

  • Strigolactones: ecological significance and use as a target for parasitic plant control

    Juan A López-Ráez;Radoslava Matusova;Catarina Cardoso;Muhammad Jamil

  • The interaction of strigolactones with abscisic acid during the drought response in rice

    Imran Haider;Imran Haider;Beatriz Andreo-Jimenez;Mark Bruno;Andrea Bimbo

  • CAROTENOID CLEAVAGE DIOXYGENASE 7 modulates plant growth, reproduction, senescence, and determinate nodulation in the model legume Lotus japonicus

    Junwei Liu;Mara Novero;Tatsiana Charnikhova;Alessandra Ferrandino

  • Pre-attachment Striga hermonthica resistance of New Rice for Africa (NERICA) cultivars based on low strigolactone production.

    Muhammad Jamil;Jonne Rodenburg;Tatsiana Charnikhova;Harro J. Bouwmeester

  • OsJAR1 is required for JA-regulated floret opening and anther dehiscence in rice

    Yuguo Xiao;Yi Chen;Tatsiana Charnikhova;Patrick P.J. Mulder

  • Zealactones. Novel natural strigolactones from maize

    Tatsiana V. Charnikhova;Katharina Gaus;Alexandre Lumbroso;Mark Sanders

  • Striga hermonthica parasitism in maize in response to N and P fertilisers

    M. Jamil;M. Jamil;F.K. Kanampiu;H. Karaya;T. Charnikhova

  • Strigolactones Are Transported through the Xylem and Play a Key Role in Shoot Architectural Response to Phosphate Deficiency in Nonarbuscular Mycorrhizal

    Wouter Kohlen;Tatsiana Charnikhova;Qing Liu;Ralph Bours

Frequent Co-Authors

Harro J. Bouwmeester
Harro J. Bouwmeester University of Amsterdam
Muhammad Jamil
Muhammad Jamil Nanjing University of Aeronautics and Astronautics
Carolien Ruyter-Spira
Carolien Ruyter-Spira Wageningen University & Research
Juan A. López-Ráez
Juan A. López-Ráez Spanish National Research Council
Ottoline Leyser
Ottoline Leyser University of Cambridge
Ton Bisseling
Ton Bisseling Wageningen University & Research
René Geurts
René Geurts MRC Laboratory of Molecular Biology
Salim Al-Babili
Salim Al-Babili King Abdullah University of Science and Technology
Jiayang Li
Jiayang Li Chinese Academy of Sciences
Susan R. McCouch
Susan R. McCouch Cornell University

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